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, especially TRP- and KCNQ-channels. To achieve this ambitious goal, we will employ an interdisciplinary approach centered on structural biology and biochemical methods. The recruited individual will conduct
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and microenvironmental mechanisms involved in diabetes progression. The candidate will employ advanced imaging, electrophysiology, and pharmacological perturbations to dissect islet cell function in
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Institute of Molecular Mechanisms and Machines, (IMOL), Poland, and the Leicester Institute of Structural and Chemical Biology, United Kingdom. Your work may include clinical and biomedical projects. It may
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interactions in systems of microbial induced plant resistance. The postdoc will be part of a collaborative research project entitled ‘Mechanisms and consequences of microbial induced resistance on trophic
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contribute to dynamics of neurodegeneration and this project will aim to refine our understanding of cellular mechanisms, biomarkers and genetic risk of amyotrophic lateral sclerosis (ALS), frontotemporal
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strong merit. We are seeking a post-doc candidate who is passionate about answering biological questions related to cancer immunology using cutting edge technology in close collaboration with experimental
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fields: materials engineering or science, mechanical engineering, electrical engineering, optical engineering, nanotechnology, or equivalent. Experience with drawing of optical fibers especially hollow
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requirement must be fulfilled no later than at the time of the appointment decision. You should have gained experience in DNA/RNA-based cellular mechanisms. Experience within the field of Quadruplex structures
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at developing and applying computational tools to understand the evolution of biodiversity (see https://islandevolution.github.io/ ). As a postdoc in this project, you will work with mathematical modelling
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Researchers working on different projects related to biotechnological methods for producing recombinant silk proteins, characterization of these, spinning of fibers, protein engineering, material